Calculation processing server equipment and use method

By setting a locking and triggering mechanism between the server host and the cabinet, the problem of the server host sliding out of the cabinet is solved, and stable installation and convenient maintenance are achieved.

CN120282402AActive Publication Date: 2025-07-08SICHUAN TECH & BUSINESS UNIV
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Patent Information

Application Number
CN202510757190.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-07-08
Estimated Expiration
2045-06-09

AI Technical Summary

Technical Problem

Existing server hosts are prone to slide out in the cabinet and lack effective fixing measures.

Method used

A locking mechanism and a trigger mechanism are designed to achieve primary and secondary locking of the server host by sliding connection between the connecting slide rail and the fixed slide rail, and combined with the combination of the locking lever and the unlocking lever.

Benefits of technology

It effectively avoids the server host slipping out of the cabinet, enhances the locking effect, and supports convenient installation and removal of the server host.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of servers, in particular to computing processing server equipment and a using method.The computing processing server equipment comprises a cabinet and a plurality of server hosts arranged in the cabinet, connecting sliding rails are fixedly connected to the two sides of each server host, and a plurality of fixed sliding rails are arranged in the cabinet; the connecting sliding rails are slidably connected with the corresponding fixed sliding rails, a plurality of first connecting supports and a plurality of second connecting supports are arranged in the cabinet, each fixed sliding rail is fixedly connected with the first connecting supports and the second connecting supports which are on the same side and are equal in height, the first connecting supports on one side are provided with first locking mechanisms, and the second connecting supports on the other side are provided with second locking mechanisms. The first locking mechanisms are connected with the first triggering mechanism. According to the invention, through the arrangement of the second locking mechanism, after the server host is installed in the cabinet, the position of the server host can be locked by moving the unlocking rod, so that the situation that the server host slides out of the cabinet is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of servers, and specifically to a computing and processing server device and a usage method thereof. Background Art

[0002] With the advent of the information age, computing and processing servers with stronger computing capabilities are increasingly widely used. Existing server hosts are usually installed in a cabinet through sliding rails for use, but the sliding rails cannot well fix the server host, and there may be a risk that the server host slides out of the cabinet. Summary of the Invention

[0003] The purpose of the present invention is to provide a computing and processing server device and a usage method thereof to solve the problem that the server host may slide out of the cabinet as mentioned in the above background art. To achieve the above purpose, the present invention provides the following technical solutions:

[0004] A computing and processing server device includes a cabinet and a number of server hosts arranged in the cabinet. Both sides of each server host are fixedly connected with connecting rails. A number of fixed rails are arranged in the cabinet. The connecting rails are slidably connected with the corresponding fixed rails. A number of connecting brackets one and a number of connecting brackets two are arranged in the cabinet. Each fixed rail is fixedly connected with the connecting bracket one and the connecting bracket two on the same side and at the same height. A locking mechanism one is arranged on each connecting bracket one on one side. The locking mechanism one is connected with a triggering mechanism one. A fixing rod is fixedly connected to each connecting rail on one side. A locking mechanism two is arranged on each fixing rod. A triggering mechanism two is arranged between the locking mechanism one and the locking mechanism two.

[0005] Preferably, after a single server host is installed in the cabinet, the locking mechanism two can lock the position of the server host. When the last server host is installed in the cabinet, the triggering mechanism one operates, enabling all the locking mechanisms one to operate to perform secondary locking on the server host. When a single locking mechanism two is unlocked, the corresponding locking mechanism one can be driven to unlock through the triggering mechanism two, enabling the corresponding server host to be removed from the cabinet.

[0006] Preferably, the first locking mechanism includes a square cylinder fixedly connected to the first connecting bracket. A first locking rod is slidably connected in the square cylinder. An oval slot is formed in the square cylinder. A first guide rod is fixedly connected to the first locking rod. The first guide rod is slidably connected in the oval slot. A first support bracket is fixedly connected to the square cylinder. A rotating disk is rotatably connected to the first support bracket. A first guiding slot is formed in the rotating disk. The first guide rod is slidably connected in the first guiding slot. A transmission rod is slidably connected to the rotating disk. A cylinder is fixedly connected to the rotating disk. A second guide rod is fixedly connected to the transmission rod. Two second guiding slots are formed in the cylinder. The second guide rod is slidably connected in the two second guiding slots.

[0007] Preferably, a first locking hole is formed in the fixed rod. When the first locking rod is slidably inserted into the first locking hole, the server host is secondarily locked.

[0008] Preferably, the first triggering mechanism includes two connecting plates connected in the cabinet. Guide rods are fixedly connected to the connecting plates. A triggering rod is slidably connected to the two guide rods. First springs are connected between the two ends of the triggering rod and the ends of the two guide rods respectively. A plurality of connecting blocks are fixedly connected to the triggering rod evenly. The transmission rod is rotatably connected to the corresponding connecting block. A limiting hook is slidably connected to the first connecting bracket on one side. A fixed block is also fixedly connected to the first connecting bracket. A second spring is connected between the limiting hook and the fixed block. Under the elastic force of the first spring, the triggering rod abuts against the limiting hook. During the process of loading the server host into the chassis, the fixed rod will abut against the limiting hook and push the limiting hook to move. Under the push of the fixed rod, the limiting hook is separated from the triggering rod.

[0009] Preferably, the second locking mechanism includes an unlocking rod slidably connected to the fixed rod. A handle is fixedly connected to one end of the unlocking rod. A guiding plate is fixedly connected to the other end of the unlocking rod. A third guiding slot is formed in the guiding plate. A second support bracket is fixedly connected to the connecting slide rail. A second locking rod is slidably connected to the second support bracket. A third guide rod is fixedly connected to the second locking rod. The third guide rod is slidably connected in the third guiding slot. A second locking hole is formed in the fixed slide rail. The second locking rod is slidably inserted into the second locking hole.

[0010] Preferably, the second triggering mechanism includes a fixed bracket fixedly connected to the unlocking rod. A rack is fixedly connected to the fixed bracket. A gear is fixedly connected to the end of the transmission rod. The gear will be aligned with the rack after moving along with the transmission rod.

[0011] Preferably, the cabinet includes a main body frame, on which four mounting strip plates are provided. The four mounting strip plates are fixedly connected to both sides of the main body frame symmetrically in pairs. A number of connecting brackets I and a number of connecting brackets II are respectively fixedly connected to the two mounting strip plates on the same side. One connecting plate is fixedly connected to both the upper and lower ends of one of the mounting strip plates. Side plates are fixedly connected to both sides of the main body frame. A top plate is fixedly connected to the top end of the main body frame. A bottom plate is fixedly connected to the bottom end of the main body frame. Net plate doors are rotatably connected to both the front and rear ends of the main body frame.

[0012] A method for using a computing and processing server device includes the following steps:

[0013] Before installing the server host, it is necessary to first pull the unlocking rod outwards through the handle until the unlocking rod cannot move further. Then, lift the server host and align the connecting slide rails on both sides of it with the two fixed slide rails in the cabinet. Then, move the server host so that the connecting slide rails are slidably connected to the fixed slide rails. Then, push the server host into the cabinet until the server host cannot move further. Finally, push the unlocking rod inwards through the handle until the unlocking rod cannot move further;

[0014] When the unlocking rod moves, it will drive the guide plate fixedly connected to it to move. When the guide plate moves outwards with the unlocking rod, the guide groove III will drive the locking rod II to move downwards through the guide rod III, ensuring that when the server host is sent into the cabinet, the locking rod II will not collide with the fixed slide rail. When the guide plate moves inwards with the unlocking rod, the guide groove III will drive the locking rod II to move upwards through the guide rod III. When the server host cannot move further, the upward-moving locking rod II can just be inserted into the locking hole II to perform the primary locking on the server host;

[0015] During the process of the server host entering the cabinet, the fixed rod on the connecting slide rail will push the limit hook to move, separating the limit hook from the trigger rod. For each server host installed in the cabinet, one limit hook will release the restriction on the trigger rod. After the last cabinet is installed, the trigger rod without the restriction of the limit hook will translate along the guide rod under the push of the spring I. The trigger rod can drive all the transmission rods to move through the connecting block. Since the guide rod II is slidably connected to the guide groove II, the guide rod II will drive the rotating disk to rotate when it moves. Since the guide rod I is slidably connected to the guide groove I, the rotating disk will drive the locking rod I to move downwards when it rotates. After the locking rod I moves downwards, it will be inserted into the locking hole I to perform the secondary locking on the server host;

[0016] When a problem occurs with a server host and it needs to be repaired, first pull out the unlocking lever on the server host outward, so that the locking lever two is removed from the locking hole two. The rack fixedly connected to the unlocking lever will also move outward with the unlocking lever. Since the transmission rod has moved a certain distance, the gear on the transmission rod is aligned with the rack. When the rack moves outward, it meshes with the gear and drives the gear to rotate. The gear drives the rotating disk to rotate through the transmission rod. At this time, the rotation direction of the rotating disk will cause the locking lever one to move upward and be removed from the locking hole one, thus completely unlocking the server host, enabling the server host to be removed from the cabinet for repair.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] 1. In the present invention, through the provided locking mechanism two, after the server host is installed in the cabinet, by moving the unlocking lever, the position of the server host can be locked, thus avoiding the situation that the server host slides out of the cabinet.

[0019] 2. In the present invention, through the provided triggering mechanism one, when the last server host is installed in the cabinet, the triggering mechanism one will drive a plurality of locking mechanisms one to run simultaneously to complete the secondary locking of all server hosts, so as to enhance the locking effect on the server hosts.

[0020] 3. In the present invention, through the provided triggering mechanism two, when a certain server host needs to be removed, by moving the unlocking lever, the corresponding locking mechanism one and locking mechanism two can be unlocked from the server host, enabling the server host to be removed from the cabinet. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is the overall structural schematic diagram of the present invention;

[0022] Figure 2 is the internal structural schematic diagram of the present invention;

[0023] Figure 3 is the structural schematic diagram of the cabinet in the present invention;

[0024] Figure 4 is the connection structural schematic diagram of the server host in the present invention;

[0025] Figure 5 is the structural schematic diagram of the triggering mechanism one in the present invention;

[0026] Figure 6 is the structural schematic of the locking mechanism one in the present invention Figure 1 ;

[0027] Figure 7 is the structural schematic of the locking mechanism one in the present invention Figure 2 ;

[0028] Figure 8 This is a schematic structural diagram of the second locking mechanism and the second triggering mechanism in the present invention.

[0029] In the figure: 1, cabinet; 101, main body frame; 102, mounting strip board; 103, side plate; 104, top plate; 105, bottom plate; 106, mesh door; 2, server host; 3, connecting slide rail; 4, fixed slide rail; 401, second locking hole; 5, first connecting bracket; 6, second connecting bracket; 7, first locking mechanism; 701, square cylinder; 702, first locking rod; 703, waist-shaped slot; 704, first guide rod; 705, first support bracket; 706, rotating disk; 707, first guiding slot; 708, transmission rod; 709, cylinder; 710, second guide rod; 711, second guiding slot; 8, first triggering mechanism; 801, connecting plate; 802, guiding rod; 803, triggering rod; 804, first spring; 805, connecting block; 806, limiting hook; 807, fixed block; 808, second spring; 9, fixed rod; 901, first locking hole; 10, second locking mechanism; 1001, unlocking rod; 1002, handle; 1003, guiding plate; 1004, third guiding slot; 1005, second support bracket; 1006, second locking rod; 1007, third guide rod; 11, second triggering mechanism; 1101, fixed bracket; 1102, rack; 1103, gear. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technical staff in the art without creative work belong to the scope of protection of the present invention.

[0031] Please refer to Figures 1 to 8 , the present invention provides a technical solution:

[0032] A computing and processing server device includes a cabinet 1 and a number of server hosts 2 arranged in the cabinet 1. On both sides of each server host 2, there are fixedly connected connection slide rails 3. In the cabinet 1, there are a number of fixed slide rails 4. The connection slide rails 3 are slidably connected to the corresponding fixed slide rails 4. In the cabinet 1, there are a number of connection brackets one 5 and a number of connection brackets two 6. Each fixed slide rail 4 is fixedly connected to the connection brackets one 5 and connection brackets two 6 on the same side and at the same height. On the connection brackets one 5 on one side, there are locking mechanisms one 7, and the locking mechanisms one 7 are all connected to a triggering mechanism one 8. On the connection slide rails 3 on one side, there are fixedly connected fixing rods 9. On each fixing rod 9, there is a locking mechanism two 10. Between the locking mechanism one 7 and the locking mechanism two 10, there is a triggering mechanism two 11.

[0033] In this embodiment, the tail end of the fixed slide rail 4 is provided with a convex block for limiting, which is used to limit the sliding distance of the connection slide rail 3 on the fixed slide rail 4, so that each server host 2 can be accurately installed.

[0034] In this embodiment, after a single server host 2 is installed in the cabinet 1, the locking mechanism two 10 can lock the position of the server host 2. When the last server host 2 is installed in the cabinet 1, the triggering mechanism one 8 operates, which can cause all the locking mechanisms one 7 to operate and perform secondary locking on the server host 2. When a single locking mechanism two 10 is unlocked, through the triggering mechanism two 11, the corresponding locking mechanism one 7 can be driven to unlock, so that the corresponding server host 2 can be removed from the cabinet 1.

[0035] In this embodiment, the locking mechanism one 7 includes a square cylinder 701 fixedly connected to the connection bracket one 5. A locking rod one 702 is slidably connected in the square cylinder 701. An oval slot 703 is opened on the square cylinder 701. A guide rod one 704 is fixedly connected to the locking rod one 702. The guide rod one 704 is slidably connected in the oval slot 703. A support bracket one 705 is fixedly connected to the square cylinder 701. A rotating disk 706 is rotatably connected to the support bracket one 705. A guiding slot one 707 is opened on the rotating disk 706. The guide rod one 704 is slidably connected in the guiding slot one 707. A transmission rod 708 is slidably connected to the rotating disk 706. A cylinder 709 is fixedly connected to the rotating disk 706. A guide rod two 710 is fixedly connected to the transmission rod 708. Two guiding slots two 711 are opened on the cylinder 709. The guide rod two 710 is slidably connected in the two guiding slots two 711.

[0036] In this embodiment, the second guiding groove 711 is composed of an inclined groove and a straight groove. The inclined groove is arranged such that when the second guiding rod 710 moves, the rotating disk 706 can rotate driven by the second guiding rod 710. The straight groove is arranged such that when the gear 1103 drives the transmission rod 708 and the rotating disk 706 to rotate, the second guiding rod 710 will not interfere with the cylinder 709, preventing the rotating disk 706 from being unable to rotate.

[0037] In this embodiment, a first locking hole 901 is formed in the fixed rod 9. When the first locking rod 702 is slidably inserted into the first locking hole 901, the server host 2 is secondarily locked.

[0038] In this embodiment, the first triggering mechanism 8 includes two connecting plates 801 connected in the cabinet 1. Guide rods 802 are fixedly connected to the connecting plates 801. A triggering rod 803 is slidably connected to the two guide rods 802. First springs 804 are connected between the two ends of the triggering rod 803 and the ends of the two guide rods 802. A plurality of connecting blocks 805 are evenly and fixedly connected to the triggering rod 803. The transmission rod 708 is rotatably connected to the corresponding connecting blocks 805. Limiting hooks 806 are slidably connected to the first connecting brackets 5 on one side. A fixed block 807 is also fixedly connected to the first connecting bracket 5. A second spring 808 is connected between the limiting hook 806 and the fixed block 807. Under the elastic force of the first spring 804, the triggering rod 803 abuts against the limiting hook 806. During the process of loading the server host 2 into the chassis, the fixed rod 9 will abut against the limiting hook 806 and push the limiting hook 806 to move. Under the push of the fixed rod 9, the limiting hook 806 is separated from the triggering rod 803.

[0039] In this embodiment, the end of the limiting hook 806 is provided with an inclined surface. When the triggering rod 803 moves and abuts against the inclined surface, the limiting hook 806 will move under the push of the triggering rod 803, so that the limiting hook 806 will not block the movement of the triggering rod 803. When the triggering rod 803 completely passes through the end of the limiting hook 806, the limiting hook 806 will reset under the push of the second spring 808 and limit the triggering rod 803 again.

[0040] In this embodiment, the second locking mechanism 10 includes an unlocking rod 1001 slidably connected to the fixed rod 9. One end of the unlocking rod 1001 is fixedly connected to a handle 1002, and the other end of the unlocking rod 1001 is fixedly connected to a guiding plate 1003. A third guiding groove 1004 is formed in the guiding plate 1003. A second supporting bracket 1005 is fixedly connected to the connecting sliding rail 3. A second locking rod 1006 is slidably connected to the second supporting bracket 1005. A third guiding rod 1007 is fixedly connected to the second locking rod 1006. The third guiding rod 1007 is slidably connected in the third guiding groove 1004. A second locking hole 401 is formed in the fixed sliding rail 4. The second locking rod 1006 is slidably inserted into the second locking hole 401.

[0041] In this embodiment, the second triggering mechanism 11 includes a fixed bracket 1101 fixedly connected to the unlocking rod 1001. A rack 1102 is fixedly connected to the fixed bracket 1101. A gear 1103 is fixedly connected to the end of the transmission rod 708. The gear 1103 will be aligned with the rack 1102 after moving with the transmission rod 708.

[0042] In this embodiment, the cabinet 1 includes a main body frame 101. Four mounting strip plates 102 are arranged on the main body frame 101. The four mounting strip plates 102 are fixedly connected to both sides of the main body frame 101 in a pairwise symmetric manner. A plurality of first connecting brackets 5 and a plurality of second connecting brackets 6 are respectively fixedly connected to the two mounting strip plates 102 on the same side. A connecting plate 801 is fixedly connected to both the upper and lower ends of one of the mounting strip plates 102. Side plates 103 are fixedly connected to both sides of the main body frame 101. A top plate 104 is fixedly connected to the top end of the main body frame 101. A bottom plate 105 is fixedly connected to the bottom end of the main body frame 101. Mesh doors 106 are rotatably connected to both the front and rear ends of the main body frame 101.

[0043] A method for using a computing and processing server device includes the following steps:

[0044] Before installing the server host 2, it is necessary to first pull the unlocking rod 1001 outward through the handle 1002 until the unlocking rod 1001 can no longer move. Then, lift the server host 2 and align the connecting sliding rails 3 on both sides of it with the two fixed sliding rails 4 inside the cabinet 1. Then, move the server host 2 so that the connecting sliding rail 3 is slidably connected to the fixed sliding rail 4. Then, push the server host 2 into the cabinet 1 until the server host 2 can no longer move. Finally, push the unlocking rod 1001 inward through the handle 1002 until the unlocking rod 1001 can no longer move;

[0045] When the unlocking lever 1001 moves, it drives the guiding plate 1003 fixedly connected thereto to move. When the guiding plate 1003 moves outwards with the unlocking lever 1001, the third guiding groove 1004 drives the second locking lever 1006 to move downwards through the third guide rod 1007, ensuring that when the server host 2 is sent into the cabinet 1, the second locking lever 1006 will not collide with the fixed slide rail 4. When the guiding plate 1003 moves inwards with the unlocking lever 1001, the third guiding groove 1004 drives the second locking lever 1006 to move upwards through the third guide rod 1007. When the server host 2 can no longer move, the upward-moved second locking lever 1006 can just be inserted into the second locking hole 401 to initially lock the server host 2;

[0046] During the process of the server host 2 entering the cabinet 1, the fixed rod 9 on the connecting slide rail 3 pushes the limit hook 806 to move, separating the limit hook 806 from the trigger rod 803. For each server host 2 installed in the cabinet 1, one limit hook 806 releases the restriction on the trigger rod 803. After the installation of the last cabinet 1 is completed, the trigger rod 803 without the restriction of the limit hook 806 will translate along the guide rod 802 under the push of the first spring 804. The trigger rod 803 can drive all the transmission rods 708 to move through the connecting block 805. Since the second guide rod 710 is slidably connected in the second guiding groove 711, the second guide rod 710 drives the rotating disk 706 to rotate when it moves. Since the first guide rod 704 is slidably connected in the first guiding groove 707, the rotating disk 706 drives the first locking lever 702 to move downwards when it rotates. After the first locking lever 702 moves downwards, it is inserted into the first locking hole 901 to perform a secondary lock on the server host 2;

[0047] When a problem occurs with a certain server host 2 and it needs to be repaired, first pull out the unlocking lever 1001 on the server host 2 outwards, so that the second locking lever 1006 is removed from the second locking hole 401. The rack 1102 fixedly connected to the unlocking lever 1001 will also move outwards with the unlocking lever 1001. Since the transmission rod 708 moves a certain distance, the gear 1103 on the transmission rod 708 is aligned with the rack 1102. When the rack 1102 moves outwards, it meshes with the gear 1103 and drives it to rotate. The gear 1103 drives the rotating disk 706 to rotate through the transmission rod 708. At this time, the rotation direction of the rotating disk 706 causes the first locking lever 702 to move upwards and be removed from the first locking hole 901, thus completely unlocking the server host 2, enabling the server host 2 to be removed from the cabinet 1 for repair.

[0048] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and the above embodiments and the descriptions in the specification are only preferred examples of the present invention, and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. A computing and processing server device, comprising a cabinet (1) and a plurality of server hosts (2) arranged in the cabinet (1). A connecting slide rail (3) is fixedly connected to both sides of each server host (2). A plurality of fixed slide rails (4) are arranged in the cabinet (1). The connecting slide rail (3) is slidably connected to the corresponding fixed slide rail (4), and it is characterized in that: Inside the cabinet (1), a number of first connecting brackets (5) and a number of second connecting brackets (6) are provided. Each of the fixed sliding rails (4) is fixedly connected to the first connecting bracket (5) and the second connecting bracket (6) on the same side and at the same height. A first locking mechanism (7) is provided on each of the first connecting brackets (5) on one side. The first locking mechanisms (7) are all connected to a first triggering mechanism (8). A fixed rod (9) is fixedly connected to each of the connecting sliding rails (3) on one side. A second locking mechanism (10) is provided on each of the fixed rods (9). A second triggering mechanism (11) is provided between the first locking mechanism (7) and the second locking mechanism (10); After a single server host (2) is installed in the cabinet (1), the second locking mechanism (10) can lock the position of the server host (2). When the last server host (2) is installed in the cabinet (1), the first triggering mechanism (8) operates, enabling all the first locking mechanisms (7) to operate and perform secondary locking on the server host (2). When a single second locking mechanism (10) is unlocked, the corresponding first locking mechanism (7) can be driven to unlock through the second triggering mechanism (11), enabling the corresponding server host (2) to be removed from the cabinet (1).

2. The computing and processing server device according to claim 1, wherein: The first locking mechanism (7) includes a square cylinder (701) fixedly connected to the first connecting bracket (5). A first locking rod (702) is slidably connected in the square cylinder (701). An oval slot (703) is formed in the square cylinder (701). A first guide rod (704) is fixedly connected to the first locking rod (702). The first guide rod (704) is slidably connected in the oval slot (703). A first support bracket (705) is fixedly connected to the square cylinder (701). A rotating disk (706) is rotatably connected to the first support bracket (705). A first guiding slot (707) is formed in the rotating disk (706). The first guide rod (704) is slidably connected in the first guiding slot (707). A transmission rod (708) is slidably connected to the rotating disk (706). A cylinder (709) is fixedly connected to the rotating disk (706). A second guide rod (710) is fixedly connected to the transmission rod (708). Two second guiding slots (711) are formed in the cylinder (709). The second guide rod (710) is slidably connected in the two second guiding slots (711).

3. The computing and processing server device according to claim 2, wherein: A first locking hole (901) is formed in the fixed rod (9). When the first locking rod (702) is slidably inserted into the first locking hole (901), the server host (2) is secondarily locked.

4. The computing and processing server device according to claim 2, wherein: The trigger mechanism 1 (8) includes two connecting plates (801) connected inside the cabinet (1). Guide rods (802) are fixedly connected to the connecting plates (801). A trigger rod (803) is slidably connected to the two guide rods (802). A first spring (804) is connected between both ends of the trigger rod (803) and the ends of the two guide rods (802). A number of connecting blocks (805) are fixedly connected to the trigger rod (803) evenly. The transmission rod (708) is rotatably connected to the corresponding connecting block (805). A limit hook (806) is slidably connected to the connecting support 1 (5) on one side. A fixed block (807) is also fixedly connected to the connecting support 1 (5). A second spring (808) is connected between the limit hook (806) and the fixed block (807). Under the elastic force of the first spring (804), the trigger rod (803) abuts against the limit hook (806). During the process of loading the server host (2) into the chassis, the fixed rod (9) will abut against the limit hook (806) and push the limit hook (806) to move. Under the push of the fixed rod (9), the limit hook (806) is separated from the trigger rod (803).

5. A computing and processing server device according to claim 2, characterized in that: The locking mechanism 2 (10) includes an unlocking rod (1001) slidably connected to the fixed rod (9). A handle (1002) is fixedly connected to one end of the unlocking rod (1001). A guiding plate (1003) is fixedly connected to the other end of the unlocking rod (1001). A third guiding groove (1004) is formed on the guiding plate (1003). A second supporting bracket (1005) is fixedly connected to the connecting slide rail (3). A second locking rod (1006) is slidably connected to the second supporting bracket (1005). A third guide rod (1007) is fixedly connected to the second locking rod (1006). The third guide rod (1007) is slidably connected in the third guiding groove (1004). A second locking hole (401) is formed on the fixed slide rail (4). The second locking rod (1006) is slidably inserted into the second locking hole (401).

6. The computing and processing server device according to claim 5, characterized in that: The trigger mechanism 2 (11) includes a fixed bracket (1101) fixedly connected to the unlocking rod (1001). A rack (1102) is fixedly connected to the fixed bracket (1101). A gear (1103) is fixedly connected to the end of the transmission rod (708). After moving with the transmission rod (708), the gear (1103) will align with the rack (1102).

7. A computing and processing server device according to claim 4, wherein: The cabinet (1) includes a main frame (101). Four mounting strip plates (102) are provided on the main frame (101). The four mounting strip plates (102) are fixedly connected to both sides of the main frame (101) symmetrically in pairs. A number of connecting brackets one (5) and a number of connecting brackets two (6) are respectively and fixedly connected to two mounting strip plates (102) on the same side. A connecting plate (801) is fixedly connected to both the upper and lower ends of one of the mounting strip plates (102). Side plates (103) are fixedly connected to both sides of the main frame (101). A top plate (104) is fixedly connected to the top end of the main frame (101). A bottom plate (105) is fixedly connected to the bottom end of the main frame (101). Mesh doors (106) are rotatably connected to both the front and rear ends of the main frame (101).

8. A method for using a computing and processing server device, using a computing and processing server device as described in any one of claims 1-7, characterized in that, It includes the following steps: Before installing the server host (2), it is necessary to first pull the unlocking rod (1001) outwards through the handle (1002) until the unlocking rod (1001) cannot move further. Then lift the server host (2) and align the connecting slide rails (3) on both sides thereof with the two fixed slide rails (4) inside the cabinet (1). Then move the server host (2) so that the connecting slide rails (3) are slidably connected to the fixed slide rails (4). Then push the server host (2) into the cabinet (1) until the server host (2) cannot move further. Finally, push the unlocking rod (1001) inwards through the handle (1002) until the unlocking rod (1001) cannot move further; When the unlocking rod (1001) moves, it will drive the guiding plate (1003) fixedly connected thereto to move. When the guiding plate (1003) moves outwards with the unlocking rod (1001), the guiding groove three (1004) will drive the locking rod two (1006) to move downwards through the guide rod three (1007), ensuring that when the server host (2) is sent into the cabinet (1), the locking rod two (1006) will not collide with the fixed slide rail (4). When the guiding plate (1003) moves inwards with the unlocking rod (1001), the guiding groove three (1004) will drive the locking rod two (1006) to move upwards through the guide rod three (1007). When the server host (2) cannot move further, the upward-moving locking rod two (1006) can just be inserted into the locking hole two (401) to perform primary locking on the server host (2); During the process of the server host (2) entering the cabinet (1), the fixed rod (9) on the connecting slide rail (3) will push the limit hook (806) to move, separating the limit hook (806) from the trigger rod (803). For each server host (2) installed in the cabinet (1), one limit hook (806) will release the restriction on the trigger rod (803). After the installation of the last cabinet (1) is completed, the trigger rod (803) without the restriction of the limit hook (806) will translate along the guide rod (802) under the push of the first spring (804). The trigger rod (803) can drive all the transmission rods (708) to move through the connecting block (805). Since the second guide rod (710) is slidably connected in the second guide groove (711), the second guide rod (710) will drive the rotating disk (706) to rotate when it moves. Since the first guide rod (704) is slidably connected in the first guide groove (707), the rotating disk (706) will drive the first locking rod (702) to move downward when it rotates. After the first locking rod (702) moves downward, it will be inserted into the first locking hole (901) to perform secondary locking on the server host (2). When a problem occurs with a certain server host (2) and it needs to be repaired, first pull out the unlocking rod (1001) on the server host (2) outward, so that the second locking rod (1006) is removed from the second locking hole (401). The rack (1102) fixedly connected to the unlocking rod (1001) will also move outward together with the unlocking rod (1001). Since the transmission rod (708) has moved a certain distance, the gear (1103) on the transmission rod (708) is aligned with the rack (1102). When the rack (1102) moves outward, it meshes with the gear (1103) and drives it to rotate. The gear (1103) drives the rotating disk (706) to rotate through the transmission rod (708). At this time, the rotation direction of the rotating disk (706) will cause the first locking rod (702) to move upward and be removed from the first locking hole (901), thus completely unlocking the server host (2), enabling the server host (2) to be removed from the cabinet (1) and repaired.

Citation Information

Patent Citations

  • Multifunctional server framework for data transmission

    CN114258221A

  • Server cabinet

    CN119545704A

  • Draw-out type low-voltage switch cabinet and operation method

    CN119813000A

  • Server cabinet and server structure using the same

    US20120092828A1

  • Devices, systems, and methods for locking a server in a rack

    US20230403812A1